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Global sensitivity analysis of elastomer joints between substructures using random balance design method

机译:随机平衡设计方法的子结构与亚结构之间的全局敏感性分析

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Plug-In Digital Framework is a system response analysis tool when the system components are composed of black-box modules. Generally, the dynamic characteristics of joints between the system components affect largely on system responses, and have displacement- and frequency-dependent stiffness and loss factor. Thus, the sensitivity of each joint parameters should be estimated in global sense. In this study, we introduce a global sensitivity analysis procedure under the Plug-In Digital Framework. To efficiently calculate the system responses, the FRF-based substructuring method is introduced. Global first-order sensitivity is obtained from the analysis of variance for system responses calculated at randomly sampled points. The random sample points are generated by the random balance design (RBD) which uses equal space sampling in cumulative distribution function for a parameter and random permutation. The Fourier transform for the sorted responses for a parameter provides the global first-order sensitivities of each joint stiffness and loss factor. The proposed global sensitivity analysis method are applied to an interior noise problem of a passenger car and the efficiency of the global sensitivity analysis method is discussed.
机译:插件数字框架是系统响应分析工具,当系统组件由黑盒模块组成时。通常,系统组件之间的关节的动态特性在很大程度上影响了系统响应,并且具有位移和频率依赖性刚度和损耗因子。因此,应以全局意义估算每个关节参数的灵敏度。在这项研究中,我们在插件数字框架下介绍了全局敏感性分析程序。为了有效地计算系统响应,介绍了基于FRF的子结构化方法。从在随机采样点计算的系统响应的方差分析中获得全局一阶灵敏度。随机采样点由随机平衡设计(RBD)产生,该设计在累积分布函数中使用相同的空间采样,以进行参数和随机排列。用于参数的分类响应的傅里叶变换提供了每个关节刚度和损耗因子的全局一阶灵敏度。所提出的全局敏感性分析方法应用于乘用车的内部噪声问题,讨论了全局敏感性分析方法的效率。

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